Chapter 2 HARDWARE INSTALLATION. 2.1 Central Processing Unit: CPU CHAPTER 2

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1 Chapter 2 HARDWARE INST 2.1 Central Processing Unit: CPU The mainboard operates with Intel Pentium II/Celeron TM processor. The mainboard uses a CPU Slot called Slot 1 for easy CPU installation and a jumper switch (SW1) to set the proper speed for the CPU. The CPU should always have a Heat Sink and a cooling fan attached to prevent overheating. 2-1

2 2.1-1 CPU Installation Procedures Different kinds of Pentium II processor that is currently used: the OEM version, the Boxed version, and Celeron TM. OEM Pentium II Processor has no Heat Sink, Fan and Heat Sink Support, the Boxed Pentium II Processor is provided with Heat Sink w/ fan and Heat Sink Support, while the Celeron TM processor is a plain processor card without cover or heatsink.. A. OEM Pentium II Processor Installation Procedures Processor Lock Heat Sink W/Fan Pentium II Processor Heat Sink Support Top Bar Notch Hole Retention Mechanism Heat Sink Support Base Heat Sink Support Pin Required Things: Pentium II processor - Processor. *Retention Mechanism(RM) - Plastic Guide that holds the S.E.C. Catridge in the Slot 1 connector. *Retention Mechanism Attach Mount(RMAM) - Bolt/Bridge assemblies inserted up through the bottom of the motherboard. RM secures to RMAM ( 2 RMAM required per RM ). *Heat Sink Support Base (HSSBASE) - Plastic support bar mounted to the mainboard under the ATX heatsink. (One leg is always bigger than the other one) 2-2

3 *Heat Sink Support Pin (HSSPIN) - Plastic pins inserted through the HSSBASE to secure it to the mainboard (2 required per Assembly). *Heat Sink Support Top Bar (HSSTOP) - Plastic bar that clips onto the HSSBASE through the fins on the ATX heatsink. **Heat Sink w/ fan - Heat Sink that can be attached to the Pentium II processor with metal clip. Note: * Provided by MSI mainboard. ** Provided by Special request. RM HSSBASE HSSPIN RMAM HSSTOP 2-3

4 Step 1: Insert the Retention Mechanism Attach Mount at the bottom of the mainboard. Step 2: Install the Retention Mechanism. Look for the key on Slot 1, and match it with the Notch Key on the Retention Mechanism for proper direction. Then, attach the Retention Mechanism to the Retention Mechanism Attach Mount. Use a Screwdriver to secure the Retention Mechanism. ê Retention Mechanism ê Notch Key Key SLOT1 ê Retention Mechanism Attach Mount ê 2-4

5 Step 3: Install the Heat Sink Support Base. Look for the Two holes across Slot 1, and match it with the Two legs of the Heat Sink Support Base for the proper direction. Take note that one hole/leg is bigger than the other. The Four top pins of the Heat Sink Support Base should also be oriented towards Slot 1. pins Heat Sink Support Pin Leg Heat Sink Support Base Push the Heat Sink Support Base onto the mainboard, until you hear a click sound. Check for a perfect fit. Step 4: Install the Heat Sink Support Pin. Push the Heat Sink Support Pins onto the two holes of the Heat Sink Support Base. Check for a perfect fit. These pins are used to secure the Heat Sink Support Base. 2-5

6 Step 5: Install the Heat Sink with Fan to the Processor. Push down the metal clips, so that they are in line with the back of the Heat Sink. Be careful, so as not detach the metal clips from the Heat Sink. Heat Sink w/ Fan Heat Sink Base Holder â The arrow should be pointing down. Metal Clips In case the metal clips are detached from the Heat Sink, re-attach them. Look for the arrow on the metal clip. This arrow should be pointing down and aligned with the Heat Sink Support Base Holder. Attach the Heat Sink to the processor. Clip Holder Metal Clips Ear Secure holes Secure Posts Clip Holder S.E.C. Cartridge - Thermal P Isometric View Metal Clips Ear Pentium II Processor (Back) Heat Sink w/ Fan(Back) - Look at the back of the Heat Sink and take note of the 2 secure posts. Insert these 2 Secure posts to the 2 secure holes on the back of the processor. - Align the ears of the metal clips with the clip holders on the back of the processor. Use a screw driver to push the metal clips onto the clip holders. Check for a perfect fit. 2-6

7 Step 6: Install the Processor. Unlock the Processor by pushing in the Processor Locks. è ç Insert the Processor like inserting a PCI or an ISA card. Step 7: Lock the Processor Locks. Secure the CPU by pulling the Processor Locks out. ç è 2-7

8 Step 8: Install the Heat Sink Support Top Bar. Push the Heat Sink Support Top Bar to the Heat Sink Support Base, Until you hear a click sound. Check for a perfect fit. The installation is now complete. Heatsink Support Top Bar 2-8

9 B. Boxed Pentium II Processor Installation Procedures The Boxed Pentium II Processor has a built- in Fan and Heat Sink. It also has a Heat Sink Support. So if you re going to use a Boxed Pentium TM II Processor, all you need is the Retention Mechanism. Step 1: Insert the Retention Mechanism Attach Mount at the bottom of the mainboard. Step 2: Install the Retention Mechanism. Look for the key on Slot 1, and match it with the Notch Key on the Retention Mechanism for proper direction. Then, attach the Retention Mechanism to the Retention Mechanism Attach Mount. Use a Screwdriver to secure the Retention Mechanism. ê Retention Mechanism ê Notch Key Key SLOT1 ê Retention Mechanism Attach Mount ê 2-9

10 Step 3: Install the Heat Sink Support Base. Look for the 2 holes across Slot 1, and match it with the 2 Heat Sink Support Base. Take note that one hole/base is bigger than the other. Retention Mechanism Notch Hole Heat Sink Support Base PC-3742 Push the Heat Sink Support Base onto the mainboard, until you hear a click sound. Check for a perfect fit. 2-10

11 Step 4: Install the Heat Sink Support. Attach the 2 Heat Sink Supports to the sides of the Processor. These Heat Sink Supports will fit in any direction, so be sure that the Heat Sink Support Locks are oriented outwards for the proper direction. Intel Boxed Pentium II Processor Heat Sink Support PC-3743 Heat Sink Support Lock 2-11

12 Step 5: Unlock the Processor Locks and Heat Sink Support Locks. Push in the Processor Locks. Open the Heat Sink Support Locks. Processor Lock Heatsink Support Lock PC-3744 Step 6: Insert the Processor like inserting a PCI or an ISA card. 2-12

13 PC-3745 Step 7: Lock the Processor Locks and Heat Sink Support Locks Secure the CPU by pushing out the Processor Locks. Close the Heat Sink Support Locks. The installation is now complete. 2-13

14 C. OEM Celeron TM Processor Installation Procedures Step 1: Insert the Retention Mechanism Attach Mount at the bottom of the mainboard. Step 2: Install the Retention Mechanism. Look for the key on Slot 1, and match it with the Notch Key on the Retention Mechanism for proper direction. Then, attach the Retention Mechanism to the Retention Mechanism Attach Mount. Use a Screwdriver to secure the Retention Mechanism. ê Retention Mechanism ê Notch Key Key SLOT1 ê Retention Mechanism Attach Mount ê 2-14

15 Step 3: Install the MSI Heat Sink (optional) to the Processor. ê Celeron TM processor Heat Sink Push down the plastic clips, so that they are in line with the hole on the processor. Check for perfect fit. Step 4: Install the Processor. ê plastic Clip Insert the Processor like inserting a PCI or an ISA card. The instruction procedure may vary depending on the Heat Sink that you re using. Step 5: Lock the Processor ê Notch Hole Retention Cap ê Plastic Lock Notch Hole Lock the processor by putting the Retention Cap provided. Take note of the two plastic lock at the side of the Retention Cap. This two plastic lock should be aligned properly into the Retention Mechanism notch hole. 2-15

16 Procedure for detaching the Retention Cap: Retention Cap (Top View) Notch Hole To remove the Retention Cap, you need a Screw Driver (0.3 cm) tip. - Insert the screw driver into the retention cap notch hole. - Push the retention cap plastic lock inward. - Pull the retention cap upward. 2-16

17 2.1-2 CPU Core Speed Derivation Procedure 1. The DIP Switch SW1 (1, 2, 3, and 4) is used to set the Core/Bus (Fraction) ratio of the CPU. The actual core speed of the CPU is the Host Clock Frequency multiplied by the Core/Bus ratio. For example: If CPU Clock = 66MHz/100MHz Core/Bus ratio = 4 then CPU core speed = Host Clock x Core/Bus ratio = 66MHz x 4/100MHz x 4 = 266MHz/400MHz SW1 CPU Core/Bus Ratio ON OFF ON ON 2.5 ON ON OFF ON 3 ON OFF OFF ON 3.5 ON ON ON OFF 4 ON OFF ON OFF 4.5 ON ON OFF OFF 5 ON OFF OFF OFF 5.5 OFF ON ON ON 6 OFF OFF ON ON 6.5 OFF ON OFF ON 7 OFF OFF OFF ON 7.5 OFF ON ON OFF 8 ON - Short OFF - Open Note: The CPU Bus Frequency is set at 66MHz or 100MHz by CPU in default. 2-17

18 2.1-3 CPU Speed Setting: SW1 To adjust the speed of the CPU, you must know the specification of your CPU (always ask the vendor for CPU specification). The mainboard can auto-detect between 66 or 100MHz CPU Bus Frequency SW1 2-18

19 a. 66MHz CPU Bus Frequency CPU SW1 Type 233MHz MHz MHz MHz Table ~ 333MHz Intel Pentium II/Celeron TM processor b. 100MHz CPU Bus Frequency CPU SW1 Type 350MHz MHz MHz MHz Table ~ 450MHz Intel Pentium II processor 2-19

20 2.1-4 CPU Bus Frequency Selector: SW2 The SW2 is used to set the CPU Bus Frequencies from 66MHz to 100MHz. When SW2 is shorted, this will automatically detect the CPU Bus Frequency. When SW2 is open, if you used 66MHz CPU Bus Frequency, this will set it Virtually into 100MHz. SW2 SW2 Feature Automatically detect 66MHz and 100MHz CPU Bus Frequency Virtually set 66MHz CPU Bus Frequency into 100MHz 2-20

21 2.1-5 Fan Power Connectors: CPUFAN/PSFAN/SYSFAN These connectors support system cooling fan with +12V. It supports three pin head connector. When connecting the wire to the connector, always take note that the red wire is the positive and should be connected to the +12V, the black wire is Ground and should be connected to GND. If your mainboard has System Hardware Monitor chipset on-board, you must use a specially designed fan with speed sensor to take advantage of this function. +12V GND PSFAN1 SENSOR SENSOR +12V GND CPUFAN PSFAN CPUFAN SYSFAN : Power Supply Fan : Processor Fan : System(Chassis) Fan SYSFAN SENSOR +12V GND For fans with fan speed sensor, every rotation of the fan will send out 2 pulses. System Hardware Monitor will count and report the fan rotation speed. Note: 1. Always consult vendor for proper CPU cooling fan. 2-21

22 2.2 Clear CMOS Jumper: JBAT1 A battery must be used to retain the mainboard configuration in CMOS RAM. Short 1-2 pins of JBAT1 to store the CMOS data. 1 3 JBAT Keep Data Clear Data Note: You can clear CMOS by shorting 2-3 pin, while the system is off. Then, return to 1-2 pin position. Avoid clearing the CMOS while the system is on, it will damage the mainboard. Always unplug the power cord from the wall socket. 2-22

23 2.3 Memory Installation Memory Bank Configuration The mainboard supports a maximum memory size of 384MB (8M x 8) or 768MB (16M x 4) registered DIMM for SDRAM: It provides three 168-pin unbuffered DIMMs (Double In-Line Memory Module) sockets. It supports 8 MB to 256 Mbytes DIMM memory module. DIMM3(Bank4+ Bank5) DIMM2(Bank2+ Bank3) DIMM1(Bank0 + Bank1)! WARNING! There are two kinds of DIMM specification supported by this mainboard: PC100 and PC66. If you use 66MHz CPU Bus Frequency, these two DIMM Specs. is supported. If you use 100 MHz CPU Bus Frequency, only PC100 DIMM Specs. is supported. 2-23

24 2.3-2 Memory Installation Procedures A. How to install a DIMM Module Single Sided DIMM Double Sided DIMM 1. The DIMM slot has a two Notch Key VOLT and DRAM, so the DIMM memory module can only fit in one direction. 2. Insert the DIMM memory module vertically into the DIMM slot. Then push it in. DRAM VOLT 3. The plastic clip at the side of the DIMM slot will automatically close. 2-24

25 2.3-3 Memory Population Rules 1. Supports only SDRAM DIMM. 2. To operate properly, at least one 168-pin DIMM module must be installed. 3. This mainboard supports Table Free memory, so memory can be installed on DIMM1, DIMM 2, or DIMM 3 in any order. 4. Supports 3.3 volt DIMM. 5. The DRAM addressing and the size supported by the mainboard is shown below: Table SDRAM Memory Addressing DRAM DRAM DRAM Address Size MB/DIMM Tech. Density & Addressing Width Row Column Single no. Double no. Side(S) pcs. Side(D) pcs. 16M 1Mx16 ASYM MBx4 16MBx8 2Mx8 ASYM MBx8 32MBx16 4Mx4 ASYM MB 64MB 64M 2Mx32 ASYM MBx2 64MBx4 2Mx32 ASYM MBx2 32MBx4 4Mx16 ASYM MB 64MB 4Mx16 ASYM MB 64MB 8Mx8 ASYM MB 128MB 16Mx4 ASYM MB 256MB 64M 2Mx32 ASYM MB 32MB 4Mx16 ASYM MB 64MB 8Mx8 ASYM MB 128MB 16Mx4 ASYM MB 256MB 2-25

26 2.4 Case Connector: JFP1 The Power Switch, Reset Switch, Power LED, Speaker, Keylock and HDD LED are all connected to the JFP1 connector block. Speaker Reset Switch Buzzer (short pin) Power Switch + Dual Single Color Color LED LED Power LED + HDD LED Keylock JFP1 2-26

27 2.4-1 Power Switch Connect to a 2-pin push button switch. This switch has the same feature with JRMS Reset Switch Reset switch is used to reboot the system rather than turning the power ON/ OFF. Avoid rebooting while the HDD LED is lit. You can connect the Reset switch from the system case to this pin Power LED The Power LED is lit while the system power is on. Connect the Power LED from the system case to this pin. There are two types of LED that you can use: 3-pin single color LED or 2-pin dual color LED(ACPI request). a. 3 pin single color LED connect to pin 4, 5, & 6. This LED will lit when the system is on. b. 2 pin dual color LED connect to pin 5 & 6. GREEN Color: Indicate the system is full on mode. ORANGE Color: Indicate the system is in suspend mode Speaker Speaker from the system case is connected to this pin. If on-board Buzzer is available: Short pin 14-15: On-board Buzzer Enabled. Open pin 14-15: On-board Buzzer Disabled HDD LED HDD LED shows the activity of a hard disk drive. Avoid turning the power off while the HDD led is lit. You can connect the HDD LED from the system case to this pin Keylock Keylock allows you to disable the keyboard for security purposes. You can connect the keylock to this pin. 2-27

28 2.5 Floppy Disk Connector: FDD The mainboard also provides a standard floppy disk connector FDC that supports 360K, 720K, 1.2M, 1.44M and 2.88M floppy disk types. This connector supports the provided floppy drive ribbon cables. FDD

29 2.6 Hard Disk Connectors: IDE1 & IDE2 The mainboard has a 32-bit Enhanced PCI IDE Controller that provides PIO mode 0~4, Bus Master, and Ultra DMA/33 function. It has two HDD connectors IDE1 (primary) and IDE2 (secondary). You can connect up to four hard disk drives, CD-ROM, 120MB Floppy (reserved for future BIOS) and other devices to IDE1 and IDE2. These connectors support the provided IDE hard disk cable. Secondary IDE Connector Primary IDE Connector 1 1 IDE1(Primary IDE Connector) The first hard drive should always be connected to IDE1. IDE1 can connect a Master and a Slave drive. You must configure second hard drive to Slave mode by setting the jumper accordingly. IDE2(Secondary IDE Connector) IDE2 can also connect a Master and a Slave drive. 2-29

30 2.7 Power Supply ATX 20-pin Power Connector: JPWR1 This connector supports the power button on-board. Using the ATX power supply, functions such as Modem Ring Wake-Up and Soft Power Off are supported by this mainboard. This power connector supports instant power on function which means that system will boot up instantly when the power connector is inserted on the board ATX Power Connector PIN DEFINITION PIN SIGNAL 1 3.3V 2 3.3V 3 GND 4 5V 5 GND 6 5V 7 GND 8 PW_OK 9 5V_SB 10 12V PIN SIGNAL V 12-12V 13 GND 14 PS_ON 15 GND 16 GND 17 GND 18-5V 19 5V 20 5V Warning: Since the mainboard has the instant power on function, make sure that all components are installed properly before inserting the power connector to ensure that no damage will be done. 2-30

31 2.7-2 Remote Power On/Off Switch: JRMS1 Connect to a 2-pin push button switch. During OFF state, press once and the system turns on. During ON stage, push once and the system goes to sleep mode: pushing it more than 4 seconds will change its status from ON to OFF. If you want to change the setup, you could go to the BIOS Power Management Setup. This is only used for ATX type power supply. JRMS1 2-31

32 2.8 IrDA Infrared Module Connector: IR The mainboard provides one 5-pin infrared (IR) connector for IR modules. This connector is for optional wireless transmitting and receiving infrared module. You must configure the setting through the BIOS setup to use the IR function. FIR and Consumer IR are reserved functions. 1 IRTX GND IRRX NC VCC IR 2-32

33 2.9 Serial Port Connectors: COM 1 and COM 2 The mainboard has a 9-pin male DIN connector for serial port COM 1. This port is a 16550A high speed communication port that send/receive 16 bytes FIFOs. You can attach a mouse or a modem cable directly into this connector COM 1 Serial Port (9-pin Male) PIN DEFINITION PIN SIGNAL 1 DCD(Data Carry Detect) 2 SIN(Serial In or Receive Data) 3 SOUT(Serial Out or Transmit Data) 4 DTR(Data Terminal Ready) 5 GND 6 DSR(Data Set Ready) 7 RTS(Request To Send) 8 CTS(Clear To Send) 9 RI(Ring Indicate) Note: There s another serial port connector (COM 2), which is located on the mainboard. Connect a serial port 9-pin male port into this connector. 2-33

34 2.10 Parallel Port Connector: LPT The mainboard provides a 25 pin female centronic connector for LPT. A parallel port is a standard printer port that also supports Enhanced Parallel Port(EPP) and Extended capabilities Parallel Port(ECP). See connector and pin definition below: Parallel Port (25-pin Female) LPT PIN DEFINITION PIN SIGNAL PIN SIGNAL 1 STROBE 14 AUTO FEED# 2 DATA0 15 ERR# 3 DATA1 16 INIT# 4 DATA2 17 SLIN# 5 DATA3 18 GND 6 DATA4 19 GND 7 DATA5 20 GND 8 DATA6 21 GND 9 DATA7 22 GND 10 ACK# 23 GND 11 BUSY 24 GND 12 PE 25 GND 13 SELECT 2-34

35 2.11 Mouse Connector: JKBMS1 The mainboard provides a standard PS/2 mouse mini DIN connector for attaching a PS/2 mouse. You can plug a PS/2 mouse directly into this connector. The connector location and pin definition are shown below: Pin6 NC Pin4 VCC Pin5 Mouse Clock Pin3 GND Pin1 Mouse DATA Pin2 NC PS/2 Mouse (6-pin Female) 2.12 Keyboard Connector: JKBMS1 The mainboard provides a standard PS/2 keyboard mini DIN connector for attaching a keyboard. You can plug a keyboard cable directly to this connector. Pin6 NC Pin4 VCC Pin5 KBD Clock Pin2 NC Pin1 KBD DATA Pin3 GND PS/2 Keyboard (6-pin Female) 2-35

36 2.13 Joystick/Midi Connectors You can connect joystick or game pads to this connector. Joystick/MIDI 2.14 Audio Port Connectors Line Out is a connector for Speakers or Headphones. Line In is used for external CD player, Tape layer, or other audio devices. Mic is a connector for the microphones. Line Out Line In Mic 1/8 Stereo Audio Connectors 2-36

37 2.15 USB Connectors The mainboard provides a UHCI(Universal Host Controller Interface) Universal Serial Bus root for attaching USB devices like: keyboard, mouse and other USB devices. You can plug the USB device directly to this connector. USB Port USB Port 1 PIN SIGNAL 1 VCC 2 -Data0 3 GND 4 +Data0 2-37

38 2.16 VGA DB 15 Pin Connector The mainboard provides a DB 15-pin connector to connect to a VGA monitor VGA Analog Video Display Connector(DB15-S) Pin Signal Description 1 Red 2 Green 3 Blue 4 Not used 5 Ground 6 Ground 7 Ground 8 Ground 9 Not used 10 Ground 11 Not used 12 SDA 13 Horizontal Sync 14 Vertical Sync 15 SCL 2-38

39 2.17 Power Saving Switch Connector: JGS1 Attach a power saving switch to JGS1. When the switch is pressed, the system immediately goes into suspend mode. Press any key and the system wakes up. JGS1 2-39

40 2.18 Power Saving LED Connector: JGL1 JGL1 can be connected with two-color LED. There are two type of LED that you can use: 3-pin LED or 2-pin LED(ACPI request). LED will lit while the system is in suspend mode JGL1 3-pin LED 2-pin LED Green Color Green Color Orange Color Orange Color Pin 1-2 Single Color Pin 1-2 Dual Color Pin 1-3 Blink 2-40

41 2.19 Wak ake-up on LAN Connector: JWOL The JWOL connector is for use with LAN add-on cards that supports Wake Up on LAN function. To use this function, you need to set the Resume By Ring to enable at the BIOS Power Management Setup. 1 3 JWOL PIN SIGNAL 1 5VSB 2 GND 3 MP_WAKEUP Note: LAN wake-up signal is active high. Note: To be able to use this function, you need a power supply that provide enough power for this feature. (750 ma power supply with 5V Stand-by) 2-41

42 2.20 Modem Wak ake Up Connector: JMDM1 The JMDM1 connector is for used with Modem add-on card that supports the Modem Wake Up function. To use this function, you need to set the Resume By Ring to enable at the BIOS Power Management Setup. 1 5 JMDM1 PIN SIGNAL 1 NC 2 GND 3 MDM_WAKEUP 4 NC 5 5VSB Note: Modem wake-up signal is active low. Note: To be able to use this function, you need a power supply that provide enough power for this feature. (750 ma power supply with 5V Stand-by) 2-42

43 2.21 Modem-In: J4 The connector is for Modem with internal voice connector. SPK IN GND MIC OUT J4 SPK_IN is connected to the Modem Speaker Out connector. MIC_OUT is connected to the Modem Microphone In connector. 2-43

44 2.22 AUX Line In Connector: J5 This connector is used for DVD Add on Card with Line In connector. GND L R J5 2-44

45 2.23 CD-In Modem Connector: J6 This connector is for Modem with internal voice connector. LGND R J6 2-45

46 2.24 CPU Temperature Sensor: JSOR1 (optional) This is used to check the CPU temperature. The JSOR1 is a sensor that is placed near the processor heatsink. This will monitor the CPU temperature. JSOR1 2-46

47 2.25 Chassis Intrusion Switch Connector: J2 This connector is connected to 2-pin connector chassis switch. If the Chassis is open, the switch will be short. The system will record this status. To clear the warning, you must enter the BIOS settting and clear the status. J2 2-47

48 2.26 Keyboard Power: JVSB1 The JVSB jumper is for setting keyboard power on feature. The function should be set in the BIOS keyboard and PS/2 mouse Wake-up function. 1 3 JVSB V Standby Enable keyboard power on function 5V (default) Disable keyboard power on function Note: To be able to use this function, you need a power supply that provide enough power for this feature. (750 ma power supply with 5V Stand-by) 2-48

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